Application of secondary carbide powders for restoration and hardening of parts

R. Zadorozhny, I. V. Romanov, V.A. Zuevsky, O. Sidorkin
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引用次数: 2

Abstract

Attention in this work is paid to the technology of obtaining powder materials from waste metals and alloys by the method of electroerosive dispersion and subsequent deposition of wear-resistant coatings. At present, it is important to look for new materials for the repair and restoration of parts of various equipment. Recycling of metal waste using electroerosive dispersion will reduce the cost of such materials. The most common way to restore parts is plasma-powder surfacing. In this case, the physical and technological parameters of the metal powders used are of particular importance. In the presented work, the expediency and relevance of the use of recycled powder materials in the technologies for the restoration and hardening of parts by the method of plasma-powder surfacing is proved. (Research purpose) Increasing the resource of parts of various equipment, restored and hardened with hard-alloy powder materials obtained by recycling waste from machinebuilding industries by the method of electroerosive dispersion. (Materials and methods) The work was carried out at the laboratory-experimental base of the Central Collective Use Center "Nano-Center" FGBNU FNATS VIM. To conduct research, a powder of the T15K6 brand was obtained from the waste of hard-alloy plates by the method of electroerosive dispersion. The following equipment was used: a pulse generator for electrospark processing of modes. Elitron-52B, Niton XL3t GOLDD + X-ray fluorescence spectrometer, set of sieves, ShS-80-01 SPU drying cabinet, Acculab ALC-210d4 analytical balance. (Results and discussions) Investigations were carried out on the elemental composition of the powders used, as well as the physical and mechanical properties of the coatings obtained on their basis by plasma-powder surfacing. (Conclusions) Studies have shown the rationality of using secondary hard-alloy powder materials in the technologies of plasma-powder surfacing in the restoration and hardening of parts. The hardness of the resulting coatings is much higher than the initial hardness of worn parts.
二次碳化物粉末在零件修复和硬化中的应用
本文研究了用电蚀分散法从废金属和合金中获得粉末材料并沉积耐磨涂层的技术。目前,寻找新的材料对各种设备的零件进行修理和修复是很重要的。利用电蚀分散体回收金属废料将降低这类材料的成本。修复零件最常用的方法是等离子粉末表面处理。在这种情况下,所使用的金属粉末的物理和技术参数是特别重要的。在本工作中,证明了在等离子体粉末堆焊法修复和硬化零件的技术中使用再生粉末材料的方便性和相关性。(研究目的)利用电蚀分散法回收机械工业废料获得硬质合金粉末材料,增加各种设备零件的资源量,对其进行修复和硬化。(材料与方法)本工作在中央集体使用中心“纳米中心”FGBNU FNATS VIM实验室实验基地进行。为了进行研究,采用电蚀分散法从硬质合金板材的废料中获得T15K6牌号粉末。使用了以下设备:用于电火花处理模式的脉冲发生器。Elitron-52B, Niton XL3t GOLDD + x射线荧光光谱仪,筛套,ShS-80-01 SPU干燥柜,Acculab ALC-210d4分析天平。(结果和讨论)研究了所使用粉末的元素组成,以及在等离子粉末堆焊的基础上获得的涂层的物理和机械性能。(结论)研究表明,在等离子体粉末堆焊工艺中使用二次硬质合金粉末材料进行零件的修复和硬化是合理的。所得涂层的硬度远远高于磨损部件的初始硬度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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